Realistic oxide materials are often semiconductors, in particular at elevated temperatures, and their surfaces contain undercoordinated atoms at structural defects such as steps and corners. Using hybrid density-functional theory and ab initio atomistic thermodynamics, we investigate the interplay of bond-making, bond-breaking, and charge-carrier trapping at the corner defects at the (100) surface of a p-doped MgO in thermodynamic equilibrium with an O2 atmosphere. We show that by manipulating the coordination of surface atoms, one can drastically change and even reverse the order of stability of reduced versus oxidized surface sites
Recent experimental and simulation studies on the hydration of MgO suggest that physically and chemi...
AbstractIn this work we use computer simulations to explain the variety of crystal orientations obse...
The formation of an oxygen vacancy and the simultaneous re-adsorption of an oxygen atom on regular a...
We investigate effects of doping on formation energy and concentration of oxygen vacancies at a meta...
Defects in thin oxide films on metal substrates affect metal work function and determine the chemica...
Defects play an important role for understanding the properties of oxide surfaces. However, a detail...
Density functional theory calculations are used to investigate O1s surface core level shifts for MgO...
We present here a theoretical investigation of the mechanism of the decomposition of formic acid on ...
We perform a systematic investigation of (100) surfaces for rocksalt-structured group 2 metal oxides...
Defects in thin oxide films on metal substrates affect metal work function and determine the chemica...
AbstractWe perform a systematic investigation of (100) surfaces for rocksalt-structured group 2 meta...
Magnesium oxide (MgO) is used in a variety of industrial applications due to its low cost and struct...
Density functional theory was used to investigate the chemical reactivity of oxygen vacancies on the...
We have investigated the energetic properties of Mn-doped MgO bulk and (100) surfaces using a QM/MM ...
The reconstruction and modification of metal surfaces upon O2 adsorption plays an important role in ...
Recent experimental and simulation studies on the hydration of MgO suggest that physically and chemi...
AbstractIn this work we use computer simulations to explain the variety of crystal orientations obse...
The formation of an oxygen vacancy and the simultaneous re-adsorption of an oxygen atom on regular a...
We investigate effects of doping on formation energy and concentration of oxygen vacancies at a meta...
Defects in thin oxide films on metal substrates affect metal work function and determine the chemica...
Defects play an important role for understanding the properties of oxide surfaces. However, a detail...
Density functional theory calculations are used to investigate O1s surface core level shifts for MgO...
We present here a theoretical investigation of the mechanism of the decomposition of formic acid on ...
We perform a systematic investigation of (100) surfaces for rocksalt-structured group 2 metal oxides...
Defects in thin oxide films on metal substrates affect metal work function and determine the chemica...
AbstractWe perform a systematic investigation of (100) surfaces for rocksalt-structured group 2 meta...
Magnesium oxide (MgO) is used in a variety of industrial applications due to its low cost and struct...
Density functional theory was used to investigate the chemical reactivity of oxygen vacancies on the...
We have investigated the energetic properties of Mn-doped MgO bulk and (100) surfaces using a QM/MM ...
The reconstruction and modification of metal surfaces upon O2 adsorption plays an important role in ...
Recent experimental and simulation studies on the hydration of MgO suggest that physically and chemi...
AbstractIn this work we use computer simulations to explain the variety of crystal orientations obse...
The formation of an oxygen vacancy and the simultaneous re-adsorption of an oxygen atom on regular a...